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Degradation of Di- Through Hepta-Chlorobiphenyls in Clophen Oil Using Microorganisms Isolated from Long Term PCBs Contaminated Soil

机译:从长期被多氯联苯污染的土壤中分离的微生物降解克洛芬油中的二至七氯联苯

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摘要

Present work describes microbial degradation of selected polychlorinated biphenyls (PCBs) congeners in Clophen oil which is used as transformer oil and contains high concentration of PCBs. Indigenous PCBs degrading bacteria were isolated from Clophen oil contaminated soil using enrichment culture technique. A 15 days study was carried out to assess the biodegradation potential of two bacterial cultures and their consortium for Clophen oil with a final PCBs concentration of 100 mg kg−1. The degradation capability of the individual bacterium and the consortium towards the varying range of PCBs congeners (di- through hepta-chlorobiphenyls) was determined using GCMS. Also, dehydrogenase enzyme was estimated to assess the microbial activity. Maximum degradation was observed in treatment containing consortium that resulted in up to 97 % degradation of PCB-44 which is a tetra chlorinated biphenyl whereas, hexa chlorinated biphenyl congener (PCB-153) was degraded up to 90 % by the consortium. This indicates that the degradation capability of microbial consortium was significantly higher than that of individual cultures. Furthermore, the results suggest that for degradation of lower as well as higher chlorinated PCB congeners; a microbial consortium is required rather than individual cultures.
机译:目前的工作描述了克洛芬油中某些多氯联苯(PCBs)同类物的微生物降解作用,该克洛芬油用作变压器油,并且含有高浓度的PCBs。使用富集培养技术从克洛芬油污染的土壤中分离出降解细菌的多氯联苯。进行了15天的研究,评估了两种细菌培养物及其财团对氯芬油的生物降解潜力,最终PCBs浓度为100 mg kg -1 。使用GCMS确定了个体细菌和联盟对多氯联苯同源物(二氯到七氯联苯)的降解能力。另外,估计脱氢酶可评估微生物活性。在含有财团的处理中观察到最大程度的降解,导致PCB-44(一种四氯化联苯)的降解高达97%,而六氯化联苯同类物(PCB-153)被该财团降解高达90%。这表明微生物群落的降解能力明显高于单个培养物。此外,结果表明,较低和较高氯化多氯联苯同类物的降解;需要微生物联盟,而不是个别的文化。

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